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评估适用于高温液相色谱-同位素比质谱分析合成代谢类固醇的分析柱。

Evaluation of analytical columns suitable for high-temperature liquid-chromatography-isotope-ratio-mass-spectrometry analysis of anabolic steroids.

机构信息

Department of Diagnostic Sciences, Doping Control Laboratory, Ghent University, Ottergemsesteenweg 460, Gent BE-9000, Belgium.

Department of Diagnostic Sciences, Doping Control Laboratory, Ghent University, Ottergemsesteenweg 460, Gent BE-9000, Belgium.

出版信息

J Chromatogr A. 2024 Aug 30;1731:465191. doi: 10.1016/j.chroma.2024.465191. Epub 2024 Jul 20.

DOI:10.1016/j.chroma.2024.465191
PMID:39074410
Abstract

Isotope ratio mass spectrometry (IRMS) can be used to determine the carbon isotope ratio of anabolic steroids. For example, in sports doping and food safety control, it enables determining an endogenous or synthetic origin of anabolic steroids. Generally, the steroids of interest are purified by liquid chromatography (LC) and analysed by gas chromatography combustion IRMS. LC-IRMS is not used since only mobile phases without carbon atoms can be used. For analysing mid-to apolar compounds, heated water can be used as an eluent as it has a similar polarity to a weak polar organic solvent. The silica-based columns are not robust enough at elevated temperatures in aqueous conditions. However, modified silica particles, metal oxides coated with polymers, and porous graphitic carbon are promising column materials for high-temperature LC (HT-LC) applications. Here, the stability of the stationary phase is crucial, and their chromatographic performance needs to be evaluated under the conditions mentioned above for anabolic steroid separations. Six columns using temperatures up to 200 °C were assessed, and only two were found to be appropriate. The ZirChrom-PBD column can be used for HT-LC-IRMS research purposes but is not recommended for routine laboratory practice applications due to the substantial loss of retention and resolution over time at elevated temperatures. Sachtopore-RP columns are the only suitable option for routine HT-LC-IRMS applications, even though they suffer from peak broadening over time when operating at elevated temperatures.

摘要

同位素比质谱(IRMS)可用于测定合成代谢类固醇的碳同位素比值。例如,在运动兴奋剂和食品安全控制中,它可以确定合成代谢类固醇的内源性或合成来源。通常,感兴趣的类固醇通过液相色谱(LC)进行纯化,并通过气相色谱燃烧 IRMS 进行分析。由于只能使用不含碳原子的流动相,因此不使用 LC-IRMS。对于分析中极性到高极性化合物,可以使用加热水作为洗脱剂,因为它与弱极性有机溶剂具有相似的极性。在水相条件下,基于硅胶的色谱柱在高温下不够稳定。然而,改性硅胶颗粒、聚合物涂覆的金属氧化物和多孔石墨碳是高温 LC(HT-LC)应用的有前途的色谱柱材料。在这里,固定相的稳定性至关重要,需要在上述条件下评估它们的色谱性能,以用于合成代谢类固醇的分离。评估了使用温度高达 200°C 的六个色谱柱,发现只有两个是合适的。ZirChrom-PBD 色谱柱可用于 HT-LC-IRMS 研究目的,但由于在高温下长时间保留和分辨率的显著损失,不建议在常规实验室实践应用中使用。Sachtopore-RP 色谱柱是常规 HT-LC-IRMS 应用的唯一合适选择,尽管它们在高温下运行时会随时间出现峰展宽。

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